首页> 外文期刊>Combustion and Flame >Ignition and combustion of Al center dot Mg alloy powders prepared by different techniques
【24h】

Ignition and combustion of Al center dot Mg alloy powders prepared by different techniques

机译:不同工艺制备的Al中心点镁合金粉末的着火与燃烧

获取原文
获取原文并翻译 | 示例
           

摘要

Alloys of aluminum and magnesium have long been explored as potential reactive materials and replacements of pure aluminum powders in energetic formulations. It has been recently shown that mechanical alloying (MA) can be used to prepare a range of Al center dot Mg powders with different compositions and particle sizes. Conventionally, such alloys are prepared by melt processing; however, no direct comparisons of combustion characteristics of such alloys prepared using different methods are available. This work is aimed at comparing the oxidation, ignition, and combustion characteristics for MA and cast-alloyed (CA) Al center dot Mg powders with similar bulk compositions and particle sizes. Particle size distributions are measured using low-angle laser light scattering. Electron microscopy and X-ray diffraction are used to examine particle morphology and phase makeup, respectively. Thermal analysis is used to identify the low-temperature reactions that could affect ignition. Ignition behavior of the two powders is studied using a heated filament ignition apparatus. Constant volume explosion experiments are performed to compare effectiveness and rate of combustion of the aerosolized alloy particles. A laser ignition setup is used to characterize combustion rates and temperatures for individual alloy particles. Low-temperature exothermic features were observed for the MA powder but not for the CA powder in thermo-analytical experiments. MA powders had slightly lower ignition temperatures than CA powders. Aerosol combustion experiments showed a substantial increase in both the maximum pressure and rate of pressure rise for the MA powders as compared to the CA powders. In single particle laser ignition experiments, MA particles ignited more readily than CA particles. MA powders burned in a staged sequence, with the first stage dominated by combustion of Mg and the second stage primarily representing combustion of Al. No similar staged combustion behavior was observed for the CA powders, which generated very short emission pulses with a relatively low brightness, and thus might not have burned completely. It is proposed that the difference in the structure and morphology between the MA and CA particles results in different ignition and combustion scenarios. (C) 2014 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:长期以来,人们一直在探索铝和镁合金作为潜在的活性材料,并替代高能配方中的纯铝粉。最近已经表明,机械合金化(MA)可用于制备一系列具有不同成分和粒径的Al中心点Mg粉末。通常,这种合金是通过熔融加工制备的。但是,没有直接比较使用不同方法制备的此类合金的燃烧特性的信息。这项工作旨在比较具有相似松散组成和粒径的MA和铸造合金(CA)Al中心点Mg粉末的氧化,着火和燃烧特性。使用低角度激光散射来测量粒度分布。电子显微镜和X射线衍射分别用于检查颗粒形态和相组成。热分析用于确定可能影响点火的低温反应。使用加热的灯丝点火装置研究了两种粉末的点火行为。进行定容爆炸实验以比较雾化合金颗粒的有效性和燃烧速率。激光点火装置用于表征单个合金颗粒的燃烧速率和温度。在热分析实验中,MA粉末观察到低温放热特征,而CA粉末则观察不到。 MA粉末的点火温度略低于CA粉末。气溶胶燃烧实验显示,与CA粉末相比,MA粉末的最大压力和升压速率均大幅增加。在单粒子激光点火实验中,MA粒子比CA粒子更容易点燃。 MA粉末按阶段燃烧,第一阶段以Mg燃烧为主,第二阶段主要代表Al的燃烧。对于CA粉末,没有观察到类似的分级燃烧行为,该CA粉末产生的发光脉冲非常短,亮度相对较低,因此可能没有完全燃烧。提出MA和CA颗粒之间的结构和形态的差异导致不同的点火和燃烧情况。 (C)2014年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号